EV
Elizabeth Vinod
Christian Medical College, Vellore, Christian Medical College & Hospital
Employment
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Christian Medical College, Vellore Assistant Professor2014 - Present
Education
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Christian Medical College & Hospital MBBS MD2016 - Present
Projects & Funding
Projects & funding information is unavailable.
Publications (30)
- Distinct Reparative and Immunomodulatory Signatures of Extracellular Vesicles From Human Cartilage-Derived Chondroprogenitors, Chondrocytes, and Bone Marrow Mesenchymal Stem Cells in a Rat Osteoarthritis Model Save
- Assessing the Potential of CD11c as a Biomarker for Identifying Ideal Donors in Hyaline Cartilage Repair Save
- Cytogenetic profiling of human articular cartilage chondrocytes, fibronectin adhesion assay derived chondroprogenitors and migratory chondroprogenitors Save
- Does integrin α10β1 enrichment improve cartilage regeneration? Insights from an in vitro and ex vivo human chondral defect repair model Save
- Comparative assessment of human chondroprogenitor viability and molecular phenotype in various parenteral transport media Save
- Exploring BMP9 and integrin alpha 10 as novel chondrogenic markers in human bone marrow-derived mesenchymal stem cells, chondroprogenitors, and chondrocytes: an immunohistochemistry study Save
- Evaluation of chondrogenesis and osteogenesis in human mesenchymal stem cells, chondrocytes, and chondroprogenitors using molecular markers, cellular markers and polarized microscopy Save
- Comparative assessment of chondral defect repair using human bone marrow- and adipose tissue-derived mesenchymal stem cells, adult and foetal articular cartilage-derived chondrocytes, and chondroprogenitors: an ex-vivo model Save
- Evaluation of Chondral Defect Repair Using Human Fibronectin Adhesion Assay-Derived Chondroprogenitors Suspended in Lyophilized Fetal Collagen Scaffold: An Ex Vivo Osteochondral Unit Model Study Save
- Comparative assessment of chondral defect repair using migratory chondroprogenitors suspended in either gelled or freeze-dried platelet-rich plasma: An in vitro and ex vivo human osteochondral unit model study Save